| Literature DB >> 25856423 |
Milton Pereira1, Chrislaine Soares1, Gisele André Baptista Canuto2, Marina Franco Maggi Tavares2, Walter Colli1, Maria Julia M Alves1.
Abstract
BACKGROUND: Adhesion of the Trypanosoma cruzi trypomastigotes, the causative agent of Chagas' disease in humans, to components of the extracellular matrix (ECM) is an important step in host cell invasion. The signaling events triggered in the parasite upon binding to ECM are less explored and, to our knowledge, there is no data available regarding •NO signaling. METHODOLOGY/PRINCIPALEntities:
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Year: 2015 PMID: 25856423 PMCID: PMC4391712 DOI: 10.1371/journal.pntd.0003683
Source DB: PubMed Journal: PLoS Negl Trop Dis ISSN: 1935-2727
Fig 1Nitric oxide synthase activity during Trypanosoma cruzi trypomastigotes adhesion to extracellular matrix.
Trypomastigotes (1x109) were incubated with ECM (1.5 mg) in phenol red free-MEM, supplemented with 2% FBS, for 2 h at 37°C and 5% CO2. The inhibitor L-NAME (10 mM) was added after the extract preparation. (A) •NO concentration in the medium was measured employing a modified fluorescent reaction of DAF-2 (Measure-iT High-Sensitivity Nitrite Assay Kit). (B) NOS activity was measured in T. cruzi extracts by the conversion of [3H]arginine to [3H]citrulline in T. cruzi extracts. The immunoblots were probed with anti-tubulin antibody to guarantee that the protein loading in each track was similar. The levels of intracellular L-Arginine (C) and L-citrulline (D) were obtained by the capillary electrophoresis method. Points marked with an asterisk represent a p<0.001 (one-way ANOVA) and with a dot represent p<0.001 in unpaired t-Student test. Results in (A) and (B) are the mean of three independent experiments and (C) and (D) are the mean of five independent experiments.
Fig 2cGMP responses during Trypanosoma cruzi trypomastigotes adhesion to extracellular matrix.
Trypomastigotes (1x109) were incubated with ECM (1.5 mg) in phenol red free-MEM, supplemented with 2% FBS, for 2 h at 37°C and 5% CO2. cGMP levels were measured in T. cruzi extracts by competitive ELISA. The asterisk represents a p<0.001 according to t-Student test. Values are the mean of four independent experiments.
Fig 3S-nitrosylation pattern during Trypanosoma cruzi trypomastigotes adhesion to extracellular matrix.
Trypomastigotes (1x109) were incubated with ECM (1.5 mg) in phenol red free-MEM, supplemented with 2% FBS, at 37°C and 5% CO2, for different incubation times. Proteins (50 μg) were resolved in 6–16% gradient SDS-PAGE. The immunoblotting was performed using the antibodies: rabbit anti-SNO 1:2,000, and the secondary HRP conjugated anti-rabbit 1:8,000. The Ponceau’s staining was used as a load control. Arrows indicate protein bands in which the signal intensity is decreased on the group incubated with the extracellular matrix in relation to the equivalent group incubated with growth media alone. The figure is representative of three experiments.
Fig 4Tyrosine nitration pattern during Trypanosoma cruzi trypomastigotes adhesion to extracellular matrix.
Trypomastigotes (1x109) were incubated with ECM (1.5 mg) in phenol red free-MEM, supplemented with 2% FBS, at 37°C and 5% CO2, for different incubation times. Proteins (50 μg) were resolved in 6–16% gradient SDS-PAGE. The immunoblotting was performed using the antibodies: rabbit anti-TyrNO2 1:2,000, mouse anti-α-tubulin 1:5,000 as a load control and the secondary HRP conjugated anti-rabbit or anti-mouse 1:8,000 antibodies. The figure is representative of three independent experiments.
Fig 5Presence of S-nitrosylated proteins in Trypanosoma cruzi trypomastigotes during adhesion to the extracellular matrix.
Trypomastigotes (1x109) were incubated with ECM (1.5 mg) in phenol red free-MEM, supplemented with 2% FBS, for 2 h at 37°C and 5% CO2. Parasites were submitted to the immunofluorescence protocol. S-nitrosylated proteins are stained in red, alpha-tubulin in green, and nucleus and kinetoplast in blue (DAPI). The white bar represents 3.2 μm.
Fig 6Presence of tyrosine nitrated proteins in Trypanosoma cruzi trypomastigotes during adhesion to the extracellular matrix.
Trypomastigotes (1x109) were incubated with ECM (1.5 mg) in phenol red free-MEM, supplemented with 2% FBS, for 2 h at 37°C and 5% CO2. Parasites were submitted to the immunofluorescence protocol. Tyrosine nitrated proteins are stained in red, alpha-tubulin is stained in green, nucleus and kinetoplast are stained in blue (DAPI). The white bar represents 3.2 μm. The image is representative of two experiments.
Fig 7The effect of nitric oxide availability on Trypanosoma cruzi protein S-nitrosylation.
Trypomastigotes (1x109) were incubated with ECM (1.5 mg) in phenol red free-MEM, supplemented with 2% FBS, for 2 h at 37°C and 5% CO2, in presence or absence of 100 μM cPTIO or CysNO. (A) Total protein S-NO was quantified in the parasite lysate using the Saville-Griess method. Asterisks represent a p<0.01 according to one-way ANOVA. (B) Parasite cell viability (1x107/well in a 96 well plate) was carried out by following the reduction of WST-1 reagent (Roche) as described by the manufacturer. Differences are not statistically significant. Values are the mean of three independent experiments.
Fig 8Validation of T. cruzi cysteine nitrosylated proteins.
(A). S-Nitrosylated proteins from ECM-incubated and ECM-non-incubated parasites were isolated by biotin switch and streptavidin pull down methodology and submitted to immunoblotting using anti-mucin II antibodies. Control of protein input and negative control (the biotin switch methodology in the absence of ascorbate) are shown. T. cruzi control (Ty) and treated with ECM for 2 hours (Ty + ECM). (B) Quantification of the results presented in (A). The asterisk represents a p<0.001 according to t-Student test.
Putative Tyrosine nitrated T. cruzi proteins identified by nLC/MS-MS after sample enrichment by immunoprecipitation.
| Group | Protein | Gene ID | Function | Theoretical | |
|---|---|---|---|---|---|
| MM (Da) | pI | ||||
| Ty | 10 kDa heat shock protein, putative | TcCLB.508209.90 | Protein folding | 10701 | 9.07 |
| Ty | 40S ribosomal protein S10, putative | TcCLB.506679.140 | Translation | 18250 | 10.8 |
| Ty | 40S ribosomal protein S14, putative | TcCLB.508823.50 | Translation | 15568 | 10.6 |
| Ty | 40S ribosomal protein S24E, putative | TcCLB.507681.150 | Translation | 15668 | 11.7 |
| Ty | 40S ribosomal protein S3a-1 OS | TcCLB.510999.39 | Translation | 28288 | 11 |
| Ty | 40S ribosomal protein S4, putative | TcCLB.509683.117 | Translation | 30876 | 11.1 |
| Ty | 40S ribosomal protein S6, putative | TcCLB.507709.50 | Translation | 21400 | 11.4 |
| Ty | 60S ribosomal protein L10a, putative | TcCLB.506963.10 | Translation | 25146 | 10.2 |
| Ty | 60S ribosomal protein L13, putative | TcCLB.508153.280 | Translation | 25294 | 11.9 |
| Ty | 60S ribosomal protein L18, putative | TcCLB.506181.50 | Translation | 34028 | 11.1 |
| Ty | 60S ribosomal protein L23a, putative | TcCLB.508175.146 | Translation | 21268 | 11.5 |
| Ty | 60S ribosomal protein L28, putative | TcCLB.510101.30 | Translation | 16368 | 12.2 |
| Ty | 60S ribosomal protein L6, putative | TcCLB.507709.50 | Translation | 21400 | 11.4 |
| Ty | 60S ribosomal protein L7a, putative | TcCLB.510835.40 | Translation | 34550 | 11.8 |
| Ty, Ty+ECM | ADP, ATP Carrier protein 1, mitocondrial precursos, putative | TcCLB.506211.160 | Transport | 34955 | 10.3 |
| Ty, Ty+ECM | alpha tubulin, putative | TcCLB.411235.9 | Cytoskeleton | 49800 | 4.7 |
| Ty | ATP synthase, epsilon chain, putative | TcCLB.506945.240 | Metabolism | 20246 | 6.08 |
| Ty, Ty+ECM | beta tubulin, putative | TcCLB.506563.40 | Cytoskeleton | 49701 | 4.43 |
| Ty | beta-fructofuranosidase-like protein | TcCLB.506705.70 | Metabolism | 53584 | 7.79 |
| Ty | chaperonin HSP60, mitochondrial precursor | TcCLB.510187.551 | Protein folding | 30553 | 9.15 |
| Ty, Ty+ECM | cytochrome c, putative | TcCLB.506949.50 | Metabolism | 12234 | 9.88 |
| Ty, Ty+ECM | elongation factor 1-alpha, putative | TcCLB.511369.30 | Translation | 30736 | 9.33 |
| Ty | enoyl-CoA hydratase, mitochondrial precursor, putative | TcCLB.508185.10 | Metabolism | 28818 | 8.91 |
| Ty, Ty+ECM | glyceraldehyde 3-phosphate dehydrogenase, putative | TcCLB.506943.50 | Metabolism | 39033 | 9.2 |
| Ty, Ty+ECM | glycosomal malate dehydrogenase, putative | TcCLB.506503.69 | Metabolism | 34068 | 8.88 |
| Ty | guanosine monophosphate reductase, putative | TcCLB.506519.130 | Metabolism | 52311 | 9.05 |
| Ty, Ty+ECM | heat shock 70 kDa protein, putative | TcCLB.511211.170 | Protein folding | 73299 | 5.22 |
| Ty, Ty+ECM | histone H2A, putative | TcCLB.510525.80 | DNA packaging | 14354 | 11.9 |
| Ty, Ty+ECM | histone H2B, putative | TcCLB.511635.10 | DNA packaging | 12361 | 12.2 |
| Ty, Ty+ECM | histone H3, putative | TcCLB.505931.50 | DNA packaging | 14762 | 11.9 |
| Ty, Ty+ECM | histone H4, putative | TcCLB.510351.20 | DNA packaging | 11170 | 11.7 |
| Ty+ECM | hypothetical protein, conserved (pseudogene) | TcCLB.511821.179 | N/A | 143829 | 4.19 |
| Ty | hypothetical protein, conserved | TcCLB.504089.70 | N/A | 12959 | 8.48 |
| Ty | hypothetical protein, conserved | TcCLB.504001.10 | N/A | 13465 | 9.78 |
| Ty+ECM | hypothetical protein, conserved | TcCLB.510877.40 | N/A | 24454 | 10.2 |
| Ty | hypothetical protein, conserved | TcCLB.510143.5 | N/A | 7311 | 6.52 |
| Ty | hypothetical protein, conserved | TcCLB.508719.70 | N/A | 44107 | 10.6 |
| Ty, Ty+ECM | kinetoplast DNA-associated protein, putative | TcCLB.508719.60 | DNA packaging | 14361 | 12.1 |
| Ty | kinetoplast-associated protein 3 | TcCLB.509791.120 | DNA packaging | 21245 | 11.9 |
| Ty | mitochondrial oligo_U binding protein TBRGG1, putative | TcCLB.507927.20 | RNA processing | 97266 | 8.8 |
| Ty | poly(A)-binding protein, putative | TcCLB.508461.140 | RNA processing | 61411 | 9.69 |
| Ty | ribosomal protein l35a, putative | TcCLB.506559.470 | Translation | 16892 | 12.1 |
| Ty | ribosomal protein L36, putative | TcCLB.509671.64 | Translation | 12948 | 12.1 |
| Ty, Ty+ECM | ribosomal protein S25, putative | TcCLB.504105.94 | Translation | 12351 | 11.2 |
| Ty | ribosomal protein S7, putative | TcCLB.506593.19 | Translation | 23915 | 11.9 |
| Ty | RNA-binding protein, putative | TcCLB.508413.50 | RNA Processing | 31097 | 9.78 |
Tyrosine nitrated T. cruzi proteins after 2 h incubation of the parasite in the presence of bovine serum albumin (Ty) or extracellular matrix (Ty+ECM).
Fig 9Validation of T. cruzi tyrosine nitrated proteins.
Proteins of interest were immunoprecipitated (IP) with specific antibodies (anti histone H2A, anti-histone H4, anti-enolase, anti-alpha tubulin, anti-beta tubulin or anti-paraflagellar rod proteins antibodies) and submitted to immunoblotting employing anti-nitro-tyrosine antibodies. A 150 kDa band of the blotting (A, B and D) or anti-tubulin antibodies (C) are shown as controls of the protein loading. T. cruzi control (Ty) and treated with ECM for 2 hours (Ty + ECM).